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冠根比对内六角短种植体应力分布的生物力学影响:三维有限元分析及统计检验

Biomechanical influence of crown-to-implant ratio on stress distribution over internal hexagon short implant: 3-D finite element analysis with statistical test.

作者信息

Ramos Verri Fellippo, Santiago Junior Joel Ferreira, de Faria Almeida Daniel Augusto, de Oliveira Guilherme Bérgamo Brandão, de Souza Batista Victor Eduardo, Marques Honório Heitor, Noritomi Pedro Yoshito, Pellizzer Eduardo Piza

机构信息

Department of Dental Materials and Prosthodontics, Aracatuba Dental School, UNESP-Univ Estadual Paulista, Aracatuba, SP, Brazil.

Department of Dental Materials and Prosthodontics, Aracatuba Dental School, UNESP-Univ Estadual Paulista, Aracatuba, SP, Brazil.

出版信息

J Biomech. 2015 Jan 2;48(1):138-45. doi: 10.1016/j.jbiomech.2014.10.021. Epub 2014 Oct 30.

Abstract

The study of short implants is relevant to the biomechanics of dental implants, and research on crown increase has implications for the daily clinic. The aim of this study was to analyze the biomechanical interactions of a singular implant-supported prosthesis of different crown heights under vertical and oblique force, using the 3-D finite element method. Six 3-D models were designed with Invesalius 3.0, Rhinoceros 3D 4.0, and Solidworks 2010 software. Each model was constructed with a mandibular segment of bone block, including an implant supporting a screwed metal-ceramic crown. The crown height was set at 10, 12.5, and 15 mm. The applied force was 200 N (axial) and 100 N (oblique). We performed an ANOVA statistical test and Tukey tests; p<0.05 was considered statistically significant. The increase of crown height did not influence the stress distribution on screw prosthetic (p>0.05) under axial load. However, crown heights of 12.5 and 15 mm caused statistically significant damage to the stress distribution of screws and to the cortical bone (p<0.001) under oblique load. High crown to implant (C/I) ratio harmed microstrain distribution on bone tissue under axial and oblique loads (p<0.001). Crown increase was a possible deleterious factor to the screws and to the different regions of bone tissue.

摘要

短种植体的研究与牙种植体的生物力学相关,而牙冠增高的研究对日常临床工作具有重要意义。本研究的目的是采用三维有限元方法,分析不同牙冠高度的单个种植体支持修复体在垂直力和斜向力作用下的生物力学相互作用。使用Invesalius 3.0、Rhinoceros 3D 4.0和Solidworks 2010软件设计了六个三维模型。每个模型均构建有下颌骨块段,包括一个支持螺丝固位金属烤瓷冠的种植体。牙冠高度设置为10、12.5和15毫米。施加的力为200 N(轴向)和100 N(斜向)。我们进行了方差分析统计检验和Tukey检验;p<0.05被认为具有统计学意义。在轴向载荷下,牙冠高度的增加对螺丝固位修复体的应力分布没有影响(p>0.05)。然而,在斜向载荷下,12.5毫米和15毫米的牙冠高度对螺丝和皮质骨的应力分布造成了统计学上的显著损伤(p<0.001)。高牙冠与种植体(C/I)比值在轴向和斜向载荷下对骨组织的微应变分布有害(p<0.001)。牙冠增高可能是导致螺丝和骨组织不同区域受损的一个因素。

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